Nano-Systems in External Fields and Reduced Geometry: Numerical Investigations
P. Henseler,
C. Schieback,
K. Franzrahe,
F. Bürzle,
M. Dreher,
J. Neder,
W. Quester,
M. Kläui,
U. Rüdiger and
P. Nielaba ()
Additional contact information
P. Henseler: University of Konstanz, Physics Department
C. Schieback: University of Konstanz, Physics Department
K. Franzrahe: University of Konstanz, Physics Department
F. Bürzle: University of Konstanz, Physics Department
M. Dreher: University of Konstanz, Physics Department
J. Neder: University of Konstanz, Physics Department
W. Quester: University of Konstanz, Physics Department
M. Kläui: University of Konstanz, Physics Department
U. Rüdiger: University of Konstanz, Physics Department
P. Nielaba: University of Konstanz, Physics Department
A chapter in High Performance Computing in Science and Engineering ’06, 2007, pp 97-112 from Springer
Abstract:
Summary Properties of magnetic domain walls have been studied as well as flow properties and phase transitions of model colloids in external potentials and structural and electronic properties of nano-wires and Si clusters. In the following sections an overview is given on the results of our recent computations on quantum effects, structures and phase transitions in such systems.
Keywords: Domain Wall; Diameter Ratio; Colloidal Crystal; Heisenberg Model; Thermal Excitation (search for similar items in EconPapers)
Date: 2007
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Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-3-540-36183-1_8
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DOI: 10.1007/978-3-540-36183-1_8
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